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The Influence of Laser Heating on the Performance of Silicon Solar Cell with Plasmonic Ag Nanoparticles

机译:激光加热对硅太阳能电池性能的影响,具有等离子体AG纳米粒子

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Have been prepared silver nanoparticles (Ag NPs) as colloidal in water by pulsed laser ablation (PLA) method at optimum pulses energy. The (Ag NPs) were deposited over the Silicon solar cell surface using a spraying coating, and then the coated Si-surface was irradiated by successive overlapping pulses at optimum energy. The spectrum (190-1100 nm) was done to study the optical properties of Ag colloidal solution and its spectra exhibit the characteristic absorption bands with a peak located around the typical value for Ag NPs. Surface morphology of the enhanced Silicon solar cell was examined prior and next laser heating processes. Also, the measurements and calculations showed that the short circuit current Jsc, the overall efficiency η and spectral response Rx enhanced after these processes above the silicon surface of the solar cell. The relative increase in Jsc was (12.6%) owing to the plasmonic absorption for the incident light that trapped via the Ag NPs forward scattering and owing to the localized surface plasmons excitation in the (Ag NPs) embedded in the Si layer by the laser heating to the Si solar cell surface and the shock wave induced by laser pulses.
机译:通过在最佳脉冲能量下通过脉冲激光烧蚀(PLA)方法在水中制备银纳米颗粒(Ag NPS)作为胶体。使用喷涂涂层在硅太阳能电池表面上沉积(Ag NPS),然后通过在最佳能量下通过连续的重叠脉冲照射涂覆的Si-表面。进行光谱(190-1100nm)以研究Ag胶体溶液的光学性质,其光谱表现出具有位于Ag NPS典型值周围的峰的特征吸收带。在先前和下一个激光加热过程中检查了增强型硅太阳能电池的表面形态。而且,测量和计算表明,短路电流JSC,整体效率η和光谱响应Rx在太阳能电池的硅表面上方的这些过程之后增强。由于通过激光加热嵌入在Si层中的(Ag nps)中捕获的入射光的等离子体吸收,JSC的相对增加是(12.6%)由AG NPS向前散射捕获并置于SI层中的局部表面等离子体激发通过激光脉冲引起的Si太阳能电池表面和冲击波。

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